研究目的
To design water network characteristics supplied by photovoltaic (PV) energy, identifying required data for better water and energy consumption efficiency rates, and proposing an analytical approach for optimal sizing of a solar pumping system in a direct current microgrid.
研究成果
The methodology for designing PV systems as energy supply for water networks was validated, showing feasibility and savings in environmental and economic terms. The use of PV systems with ESS or water storage tanks presents a positive ROI and reduces environmental emissions, making it a replicable solution for small-medium cities.
研究不足
The methodology's validation is limited to the Zarautz case study, and the sustainability assessment relies on reference values from similar municipalities due to data availability constraints.
1:Experimental Design and Method Selection:
The methodology involves water-energy auditing, design and assessment of solutions by mathematical simulation, and validation of proposals through sustainability analysis.
2:Sample Selection and Data Sources:
The case study includes the municipal distribution network of Zarautz, with data on hydraulic elements, water and energy consumption profiles, solar generation parameters, and economic indicators.
3:List of Experimental Equipment and Materials:
Includes PV panels, energy storage systems (ESS), dc–dc converters, and pumping systems.
4:Experimental Procedures and Operational Workflow:
Involves hydraulic model simulation, characterization of energy requirements, PV dimensioning, and dynamic simulation of scenarios.
5:Data Analysis Methods:
Uses EPANET for hydraulic simulation and MATLAB-Simulink for PV system design, with sustainability assessment based on standard indicators.
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